Literature DB >> 11555414

Syntaxin 6: the promiscuous behaviour of a SNARE protein.

F Wendler1, S Tooze.   

Abstract

Vesicle flow within the cell is responsible for the dynamic maintenance of and communication between intracellular compartments. In addition, vesicular transport is crucial for communication between the cell and its surrounding environment. The ability of a vesicle to recognise and fuse with an appropriate compartment or vesicle is determined by its protein and lipid composition as well as by proteins in the cytosol. SNARE proteins present on both vesicle as well as target organelle membranes provide one component necessary for the process of membrane fusion. While in mammalian cells the main focus of interest about SNARE function has centred on those involved in exocytosis, recent data on SNAREs involved in intracellular membrane-trafficking steps have provided a deeper insight into the properties of these proteins. We take, as an example, the promiscuous SNARE syntaxin 6, a SNARE involved in multiple membrane fusion events. The properties of syntaxin 6 reveal similarities but also differences in the behaviour of intracellular SNAREs and the highly specialised exocytotic SNARE molecules.

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Year:  2001        PMID: 11555414     DOI: 10.1034/j.1600-0854.2001.20903.x

Source DB:  PubMed          Journal:  Traffic        ISSN: 1398-9219            Impact factor:   6.215


  46 in total

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4.  Kalirin/Trio Rho GDP/GTP exchange factors regulate proinsulin and insulin secretion.

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6.  Direct targeting of membrane fusion by SNARE mimicry: Convergent evolution of Legionella effectors.

Authors:  Xingqi Shi; Partho Halder; Halenur Yavuz; Reinhard Jahn; Howard A Shuman
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7.  Indirect Immunofluorescence on Frozen Sections of Mouse Mammary Gland.

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9.  Syntaxin 6 and CAL mediate the degradation of the cystic fibrosis transmembrane conductance regulator.

Authors:  Jie Cheng; Valeriu Cebotaru; Liudmila Cebotaru; William B Guggino
Journal:  Mol Biol Cell       Date:  2010-02-03       Impact factor: 4.138

10.  WNK4 regulates the secretory pathway via which TRPV5 is targeted to the plasma membrane.

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Journal:  Biochem Biophys Res Commun       Date:  2008-08-12       Impact factor: 3.575

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